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有丝分裂相特异性 EB1 相互作用蛋白的蛋白质组学研究揭示了 SXIP 介导的蛋白质相互作用在后期起始中的作用。

A proteomic study of mitotic phase-specific interactors of EB1 reveals a role for SXIP-mediated protein interactions in anaphase onset.

机构信息

Department of Genetics, University of Cambridge, Cambridge, UK.

Department of Genetics, University of Cambridge, Cambridge, UK Present address: European Research Institute for the Biology of Ageing, University of Groningen, Groningen, Netherlands.

出版信息

Biol Open. 2015 Jan 16;4(2):155-69. doi: 10.1242/bio.201410413.

Abstract

Microtubules execute diverse mitotic events that are spatially and temporally separated; the underlying regulation is poorly understood. By combining drug treatments, large-scale immunoprecipitation and mass spectrometry, we report the first comprehensive map of mitotic phase-specific protein interactions of the microtubule-end binding protein, EB1. EB1 interacts with some, but not all, of its partners throughout mitosis. We show that the interaction of EB1 with Astrin-SKAP complex, a key regulator of chromosome segregation, is enhanced during prometaphase, compared to anaphase. We find that EB1 and EB3, another EB family member, can interact directly with SKAP, in an SXIP-motif dependent manner. Using an SXIP defective mutant that cannot interact with EB, we uncover two distinct pools of SKAP at spindle microtubules and kinetochores. We demonstrate the importance of SKAP's SXIP-motif in controlling microtubule growth rates and anaphase onset, without grossly disrupting spindle function. Thus, we provide the first comprehensive map of temporal changes in EB1 interactors during mitosis and highlight the importance of EB protein interactions in ensuring normal mitosis.

摘要

微管执行各种有丝分裂事件,这些事件在空间和时间上是分离的;其背后的调控机制还了解甚少。通过结合药物处理、大规模免疫沉淀和质谱分析,我们报告了第一个微管末端结合蛋白 EB1 的有丝分裂相特异性蛋白质相互作用的综合图谱。EB1 在整个有丝分裂过程中与一些,但不是全部,其伴侣相互作用。我们表明,与 Astrin-SKAP 复合物(染色体分离的关键调节剂)的 EB1 相互作用在前期增强,而不是后期。我们发现另一个 EB 家族成员 EB3 可以以 SXIP 基序依赖性的方式与 SKAP 直接相互作用。使用不能与 EB 相互作用的 SXIP 缺陷突变体,我们在纺锤体微管和动粒上发现了两个不同的 SKAP 池。我们证明了 SKAP 的 SXIP 基序在控制微管生长速度和后期起始中的重要性,而不会严重破坏纺锤体功能。因此,我们提供了有丝分裂过程中 EB1 相互作用体随时间变化的第一个全面图谱,并强调了 EB 蛋白相互作用在确保正常有丝分裂中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1eee/4365484/85182cec7fe2/bio-04-02-155-f01.jpg

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